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静态拉伸对峰值扭矩、平均功率输出、肌电图和机械肌电图的急性影响。

The acute effects of static stretching on peak torque, mean power output, electromyography, and mechanomyography.

作者信息

Cramer J T, Housh T J, Weir J P, Johnson G O, Coburn J W, Beck T W

机构信息

Department of Kinesiology, Exercise Science Research Laboratories, The University of Texas at Arlington, Arlington, TX 76019-0259, USA.

出版信息

Eur J Appl Physiol. 2005 Mar;93(5-6):530-9. doi: 10.1007/s00421-004-1199-x. Epub 2004 Dec 15.

Abstract

The purpose of this study was to examine the acute effects of static stretching on peak torque (PT), the joint angle at PT, mean power output (MP), electromyographic (EMG) amplitude, and mechanomyographic (MMG) amplitude of the vastus lateralis (VL) and rectus femoris (RF) muscles during maximal, voluntary concentric isokinetic leg extensions at 60 and 240 degrees x s(-1) of the stretched and unstretched limbs. Twenty-one volunteers [mean age (SD) 21.5 (1.3) years] performed maximal, voluntary concentric isokinetic leg extensions for the dominant and non-dominant limbs at 60 and 240 degrees x s(-1). Surface EMG (muVrms) and MMG (mVrms) signals were recorded from the VL and RF muscles during the isokinetic tests. PT (Nm), the joint angle at PT, and MP (W) were calculated by a dynamometer. Following the initial isokinetic tests, the dominant leg extensors were stretched using four static stretching exercises. After the stretching, the isokinetic tests were repeated. PT decreased (P< or =0.05) from pre- to post-stretching for the stretched limb at 60 and 240 degrees x s(-1) and for the unstretched limb at 60 degrees x s(-1). EMG amplitude of the VL and RF also decreased (P< or =0.05) from pre- to post-stretching for the stretched and unstretched limbs. There were no stretching-induced changes (P>0.05) for the joint angle at PT, MP, or MMG amplitude. These findings indicated stretching-induced decreases in force production and muscle activation. The decreases in PT and EMG amplitude for the unstretched limb suggested that the stretching-induced decreases may be due to a central nervous system inhibitory mechanism.

摘要

本研究的目的是检测在伸展和未伸展肢体以60度/秒和240度/秒进行最大自主向心等速腿部伸展过程中,静态拉伸对股外侧肌(VL)和股直肌(RF)的峰值扭矩(PT)、PT时的关节角度、平均功率输出(MP)、肌电图(EMG)幅度和机械肌电图(MMG)幅度的急性影响。21名志愿者[平均年龄(标准差)21.5(1.3)岁]对优势侧和非优势侧肢体以60度/秒和240度/秒进行最大自主向心等速腿部伸展。在等速测试期间,从VL和RF肌肉记录表面肌电图(均方根微伏)和MMG(均方根毫伏)信号。通过测力计计算PT(牛顿米)、PT时的关节角度和MP(瓦特)。在最初的等速测试后,使用四种静态拉伸练习对优势侧腿部伸肌进行拉伸。拉伸后,重复进行等速测试。在60度/秒和240度/秒时,伸展肢体以及在60度/秒时未伸展肢体的PT从拉伸前到拉伸后均降低(P≤0.05)。伸展和未伸展肢体的VL和RF的EMG幅度从拉伸前到拉伸后也均降低(P≤0.05)。PT时的关节角度、MP或MMG幅度没有拉伸诱导的变化(P>0.05)。这些发现表明拉伸会导致力量产生和肌肉激活降低。未伸展肢体的PT和EMG幅度降低表明,拉伸诱导的降低可能归因于中枢神经系统抑制机制。

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